R. Gindera - IEEE Xplore Author Profile

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In this paper, the concept, design and development of an optical transceiver using polymer optical fibers (POF) are presented. The optoelectronic conversion is performed using a novel multifunctional vertical electroabsorption transceiver (V-EAT) element where a single fiber is used and where no light source is required in the module leading to a low-cost and low-power system. As an experimental e...Show More
The design of a dual band base station for IEEE 802.11 a/b/g WLANs, using a radio over fiber approach, is presented. For the first time LTCC technology is being used to couple a graded index polymer optical fiber (GI-POF) to a vertical electroabsorption transceiver. The presented approach enables full optical transceiving functionalities and employs only one optical fiber to connect the base stati...Show More
This paper describes the realization of a low-temperature co-fired ceramic (LTCC)-based wireless transceiver with optical interface for radio-over-fiber applications involving several standards. The RF front-end including an antenna is fabricated in LTCC technology, while the optical transceiver with a single-mode optical interface is built on a silicon motherboard. The front-end operates in the 5...Show More
In this paper we describe a novel planar integrated microwave generator using a ring oscillator. This concept can be used for remote microwave generation in fiber radio antenna base-stations. It offers the possibility to be used in future wireless distributed antenna systems using e.g. polymer optical fibersShow More
This paper describes the realization of an LTCC based optical wireless-transceiver using radio-over-fiber (RoF) techniques. For the first time, single mode optical fibers are employed, making this device particularly attractive for indoor and outdoor distributed antenna systems. The operating frequencies are in the 5-6 GHz bandShow More